Meteorological observation system with autonomous gliding function and using method thereof

A meteorological observation and function technology, applied to instruments and other directions, can solve the problems of poor horizontal continuity of data, inability to obtain meteorological data, and high cost, and achieve the effect of realizing buoyancy adjustable size, efficient and reliable data assurance

Inactive Publication Date: 2018-10-16
THE FIRST INST OF OCEANOGRAPHY SOA
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Putting up sounding balloon observations can obtain a large amount of data on the vertical scale of a single point, but large-scale observations in the horizontal direction have poor horizontal continuity and high cost
Buoy fixed-point observation can only continuously measure single-point meteorological data, and cannot obtain meteorological data on horizontal and vertical scales
None of the above observation methods can perform horizontal and vertical continuous observation of the low-altitude atmosphere in a specific area.

Method used

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  • Meteorological observation system with autonomous gliding function and using method thereof
  • Meteorological observation system with autonomous gliding function and using method thereof
  • Meteorological observation system with autonomous gliding function and using method thereof

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Embodiment Construction

[0020] In order to illustrate the structural characteristics and specific operation steps of the present invention in detail, it will now be described in conjunction with the accompanying drawings.

[0021] according to Figure 1-Figure 3 Shown: a meteorological observation system with autonomous gliding function of the present invention, comprising a housing (1), a lightweight inflatable tube (2), an inflatable airboat (3), an air pump (4), and an air storage tank (5) , control acquisition system (6), iridium star module (7), GPS module (8), battery compartment (9), meteorological sensor (10), storage battery (11), it is characterized in that: on the upper end of housing (1) The inflatable airboat (3) is connected with the light inflatable tube (2), and the inside of the inflatable airboat (3) is filled with helium to provide rising buoyancy; the lower end of the light inflatable tube (2) is installed in the shell ( 1) The inner air pump (4) and the air storage tank (5) are ...

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Abstract

The invention belongs to the field of meteorological observation technology, and in particular relates to a meteorological observation system with an autonomous gliding function and a using method thereof. The system comprises a shell, a light inflatable tube, an inflatable airship, an air pump, a gas storage tank, a control collection system, an iridium satellite module, a GPS module, a battery compartment, a weather sensor and a storage battery, and is characterized in that: the inflatable airship is arranged at the upper end of the shell; the control collection system, the iridium satellitemodule, the GPS module and the battery compartment are also installed on the inner side of the shell; and the weather sensor is mounted on the left side of the shell. The invention adopts the above technical solution, and has the following advantages of: controlling the rise of the meteorological observation system by adjusting the buoyancy amount, and realizing the horizontal movement by the gliding drop. The introduction of the gas storage tank and the air pump adjusts the amount of helium inside the air balloon, thereby realizing the buoyancy adjustable function.

Description

technical field [0001] The invention belongs to the technical field of meteorological observation, and in particular relates to a meteorological observation system with autonomous gliding function and its application method. Background technique [0002] Meteorological observations in the lower atmosphere are of great significance to the precise forecasting of weather and climate. At present, the means of meteorological observation of the low-altitude atmosphere mainly include satellite observation, fixed-point observation of meteorological stations, observation of launching sounding balloons, and fixed-point meteorological observation of buoys on the ocean. The meteorological observation by satellites can only be on a large scale, and the vertical observation depth and accuracy are limited. Fixed-point observation of meteorological stations can be used for single-point meteorological monitoring, but the cost of networking is very high, and many remote areas are not suitabl...

Claims

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Application Information

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IPC IPC(8): G01W1/08
CPCG01W1/08
Inventor 王海员郭延良赵昌薛亮杨洋王凤军
Owner THE FIRST INST OF OCEANOGRAPHY SOA
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